← Back
Publicaciones

Precision charge control for isolated free-falling test masses: LISA pathfinder results

Authors

Armano, M. , Audley, H. , Baird, J. , Binetruy, P. , Born, M. , Bortoluzzi, D. , Castelli, E. , Cavalleri, A. , Cesarini, A. , Cruise, A. M. , Danzmann, K. , de Deus Silva, M. , Diepholz, I , Dixon, G. , Dolesi, R. , Ferraioli, L. , Ferroni, V , Fitzsimons, E. D. , Freschi, M. , Gesa, L. , Giardini, D. , Gibert, F. , Giusteri, R. , Grimani, C. , Grzymisch, J. , Harrison, I , Heinzel, G. , Hewitson, M. , Hollington, D. , Hoyland, D. , Hueller, M. , Inchauspe, H. , Jennrich, O. , Jetzer, P. , Karnesis, N. , Kaune, B. , Korsakova, N. , Killow, C. J. , Liu, L. , Lloro, I , Lobo, J. A. , Lopez-Zaragoza, J. P. , Maarschalkerweerd, R. , Mailland, F. , Mance, D. , Martin, V , Martin-Polo, L. , Martin-Porqueras, F. , Martino, J. , Mateos, I , McNamara, P. W. , Mendes, J. , Mendes, L. , Meshskar, N. , Nofrarias, M. , Paczkowski, S. , Perreur-Lloyd, M. , Petiteau, A. , Pfeil, M. , Pivato, P. , Plagnol, E. , Ramos-Castro, J. , Reiche, J. , Robertson, D. , RIVAS GARCÍA, FRANCISCO, Russano, G. , Santoruvo, G. , Sarra, P. , Shaul, D. , Slutsky, J. , Sopuerta, C. F. , Sumner, T. , Texier, D. , Thorpe, J. , Trenkel, C. , Vetrugno, D. , Vitale, S. , Wanner, G. , Ward, H. , Waschke, S. , Wass, P. J. , Weber, W. J. , Wissel, L. , Wittchen, A. , Zweifel, P. , LISA Pathfinder Collaboration

External publication

Si

Means

Phys. Rev. D

Scope

Article

Nature

Científica

JCR Quartile

SJR Quartile

JCR Impact

4.368

Publication date

11/09/2018

ISI

000444351600001

Abstract

The LISA Pathfinder charge management device was responsible for neutralizing the cosmic-ray-induced electric charge that inevitably accumulated on the free-falling test masses at the heart of the experiment. We present measurements made on ground and in flight that quantify the performance of this contactless discharge system which was based on photoemission under UV illumination. In addition, a two-part simulation is described that was developed alongside the hardware. Modeling of the absorbed UV light within the Pathfinder sensor was carried out with the GEANT4 software toolkit and a separate MATLAB charge transfer model calculated the net photocurrent between the test masses and surrounding housing in the presence of AC and DC electric fields. We confront the results of these models with observations and draw conclusions for the design of discharge systems for future experiments like LISA that will also employ free-falling test masses.

Universidad Loyola members